Soil salinity levels are determined by collecting soil samples for electrical conductivity (EC), whereas sodicity is determined by assessing the sodium adsorption ratio (SAR) — preferably by using the “saturated paste extract method.” The most important soil depth for assessing soil salinity and sodicity in determining salt-tolerant perennial plant species is the top 12 inches of soil. These zones are where the seed is planted and where salinity and sodicity can severely affect seed germination, plant growth and yields. Soil sampling results will help assess the severity of soil salinity and sodicity. Based on NDSU research trial data, soil surface (6- or 12-inch depth) saturated paste extract EC values of ≥10.0 mmhos/cm and SAR values of ≥12 can be considered threshold levels beyond which planting — even for the most salt-tolerant annual crops such as sugarbeet, sunflower, oat and barley — becomes difficult to establish these species and even harvest a crop. At or above these salinity and sodicity levels, establishing perennial salt-tolerant plant species is a more reliable option for maintaining plant growth and reducing economic losses in these areas.
Recommended Plant Species for Saline and Sodic Soils
Plant species growing in saline or sodic soils include mainly wheatgrass species, Russian wildrye, winter-hardy alfalfa and strawberry clover. Alfalfa is typically not recommended when EC levels exceed 4.0 mmhos/cm. However, salt-tolerant alfalfa varieties are available and have shown some success at EC levels of 6.0 mmhos/cm. Consistent data on the successful establishment of salt-tolerant alfalfa compared to traditional alfalfa varieties is limited for soils with EC levels greater than 4.0 mmhos/cm. Some studies have shown that seeding alfalfa at the same time as a salt-tolerant grass species mixture may cause the alfalfa to eventually establish in the plant community two to three years after planting.
Below is a list and description of preferred wheatgrass species, as well as Russian wildrye, strawberry clover and alfalfa, recommended for seeding these non-productive saline and/or sodic cropland areas.
Tall Wheatgrass: This cool-season perennial grass is a tall-statured, coarse, late-maturing bunchgrass with large seed and an upright plant architecture. Although a poor-quality feed for livestock, tall wheatgrass provides excellent habitat for wildlife. It has a medium water use and high salinity tolerance: 13-26 mmhos/cm.
Tall wheatgrass growing at the Langdon REC on July 30, 2024.
Slender Wheatgrass: This cool-season, short-lived, perennial bunchgrass has an upright plant architecture. It is easy to establish, providing good vigor in the first year; however, it loses vigor and declines in population density within three to five years. It has low water use and high salinity tolerance: 10-22 mmhos/cm.
Slender wheatgrass growing at the Langdon REC on Aug. 2, 2023.
Green Wheatgrass (AC Saltlander): This cool-season, long-lived, perennial bunchgrass has an upright plant architecture and is a low-water-use species. It grows in moderate- to high-salinity soils and is a hybrid between quackgrass (Elymus repens) and bluebunch wheatgrass (Pseudoroegneria spicata). Although it has a bunch-type appearance, it can spread through rhizomes, providing quicker soil cover compared to most bunchgrasses. This species can handle wet soil conditions. It is, however, the most expensive of the grass seeds in this mixture. The most common variety used for saline/sodic soils is AC Saltlander. It has a high salinity tolerance: 15-25 mmhos/cm.
Western Wheatgrass: This cool-season perennial grass grows upright and is a long-lived, drought-resistant and sod-forming grass with a deep rhizomatous root system. This species can withstand periodic flooding, has moderate water use, and has moderate to high salinity tolerance: 6-16 mmhos/cm.
Western wheatgrass growing at the Langdon REC on July 30, 2024.
Green wheatgrass growing at the Langdon REC on July 30, 2024.
Russian Wildrye: This cool-season perennial grass is an early-maturing, long-lived bunchgrass with fine basal leaves and a deep fibrous root system. It grows upright and doesn’t handle excessive water well, causing it to disappear in long-term saturated soils. This grass is exceptionally drought-tolerant and has high salinity tolerance: 13-24 mmhos/cm.
Russian wildrye growing at the Langdon REC on July 22, 2022.
Strawberry Clover: This low-growing perennial clover is notoriously tolerant of wet, waterlogged conditions, and it produces nitrogen to feed the grass species. This plant is deep-rooted and spreads. Strawberry clover does not tolerate excess shading and performs best when grasses within the plant community are hayed or grazed. Salinity tolerance is high: 15-25 mmhos/cm.
Alfalfa: Generally, this species needs to be a winter-hardy, inexpensive alfalfa variety in a mixture of perennial salt-tolerant grasses. Alfalfa may not establish in the first two to three years but can lie dormant as salinity levels decline to allow germination. Once the alfalfa is established, it can handle moderate salinity levels. Alfalfa has a slightly lower salinity tolerance in the seedling stage: 2-4 mmhos/cm. Salt-tolerant alfalfa varieties have shown success in establishment at levels up to 6 mmhos/cm. Alfalfa may not establish or be maintained in the plant community if soils stay saturated for long periods of the year.
Note: The EC tolerance values mentioned above were measured at a 1:1 soil-to-water ratio, which generally yields lower values than the saturated paste extract method.